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首页> 外文期刊>Research journal of applied science, engineering and technology >A Scalable and Minimized Butterfly Fat Tree (SMBFT) Switching Network for On-Chip Communication
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A Scalable and Minimized Butterfly Fat Tree (SMBFT) Switching Network for On-Chip Communication

机译:用于片上通信的可扩展且最小化的蝴蝶胖树(SMBFT)交换网络

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摘要

This study proposes a scalable and cost effective Network on Chip (NoC) based architecture that is a modified version of Butterfly Fat Tree (BFT) network and is known as Scalable and Minimized Butterfly Fat Tree (SMBFT) switching network. The corresponding floor plan and scalable routing algorithm for the proposed network is also presented. Component Based Interconnection Network Simulator (CINSIM) was used to evaluate the steady state as well as transient behaviors of SMBFT, BFT and Binary Tree switching networks for average delay at targets. Results show that the proposed on-chip network outperforms the other two in terms of average delay, area and cost. SMFBT also comprises of less number of routers, links and levels. Hence the proposed network of switches is superior to BFT and Binary Tree and can efficiently be used for on-chip communication networks.
机译:这项研究提出了一种基于可扩展且具有成本效益的基于芯片上网络(NoC)的体系结构,该体系结构是蝴蝶胖树(BFT)网络的改进版本,被称为可扩展和最小化的蝴蝶胖树(SMBFT)交换网络。还介绍了所建议网络的相应平面图和可扩展路由算法。基于组件的互连网络仿真器(CINSIM)用于评估SMBFT,BFT和二叉树交换网络的稳态以及瞬态行为,以求出目标的平均延迟。结果表明,所提出的片上网络在平均延迟,面积和成本方面均优于其他两个。 SMFBT还包括较少数量的路由器,链接和级别。因此,所提出的交换机网络优于BFT和二叉树,并且可以有效地用于片上通信网络。

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